In Vivo HOXB7 Gene Silencing and Cotreatment with Tamoxifen for Luminal A Breast Cancer Therapy

Ana Beatriz Caribé Dos Santos Valle1, Fábio Fernando Alves da Silva2, Maria Ângela Pepe Carneiro2

  • 1Laboratório de Desenvolvimento de Sistemas Nanoestruturados, Faculdade de Farmácia, Universidade Federal de Juiz de Fora, Rua José Lourenço Kelmer, Juiz de Fora 36036-900, Brazil.

PubMed
Abstract

Insights

HOXB7 gene silencing using nanoparticles combined with tamoxifen (TMX) treatment can overcome TMX resistance in Luminal A breast cancer. This approach improves therapeutic efficacy and reduces adverse effects in patients.

Area of Science:

  • Oncology
  • Nanotechnology
  • Molecular Biology

Background:

  • Tamoxifen (TMX) treatment faces challenges of acquired resistance and adverse effects in Luminal A breast cancer.
  • HOXB7 gene overexpression is linked to TMX resistance in this breast cancer subtype.
  • Targeting HOXB7 offers a potential strategy to restore TMX sensitivity.

Purpose of the Study:

  • To investigate the efficacy of delivering short interfering RNA (siRNA) targeting HOXB7 using hybrid nanoparticles (HNP) in combination with TMX.
  • To evaluate the RNA interference (RNAi) effects and therapeutic outcomes in a Luminal A breast cancer model.

Main Methods:

  • Hybrid nanoparticles (HNP) were synthesized for siRNA delivery.
  • In vitro assessments of cell viability and migration were performed.
  • In vivo studies involved treating tumor-bearing animals with HNP-siHOXB7, HNP-siHOXB7 + TMX, and TMX, followed by comprehensive analyses.

Main Results:

  • HNP effectively delivered siRNA both in vitro and in vivo.
  • HOXB7 gene silencing combined with TMX treatment led to controlled tumor growth.
  • This combined approach resulted in increased survival rates and reduced toxicity.

Conclusions:

  • HOXB7 is a promising molecular target for Luminal A breast cancer therapy.
  • Combining HOXB7 targeting with hormone therapy can mitigate adverse effects and enhance treatment efficacy.

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